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project dedicated to decoding early human embryo development through cutting-edge stem cell-based embryo models, single-cell omics, with a focus on X-chromosome inactivation and cell fate. The project
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of Engineering and Architecture → Department: EA17 - Toegepaste Fysica → Occupancy rate: 100% → Number of positions: 1 → Type of employment: Contract of limited duration → Term of assignment: 1 year → Wage
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to unravel how plants control gene expression across different tissues and stress conditions by combining single-cell genomics, artificial intelligence, and synthetic biology. Apart from shedding light on
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and stress conditions by combining single-cell genomics, artificial intelligence, and synthetic biology. Apart from shedding light on the fundamental aspects of transcriptional control, this project
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developmental biology, cell biology and evolutionary biology. We like to implement novel omics technologies such as single cell approaches and chemical biology to help us answering our biological questions
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method, can engineer thousands of defined mutations in parallel in a single test tube in yeast. Strains are tagged by DNA barcodes, allowing to efficiently track mutations in cell populations during
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method, can engineer thousands of defined mutations in parallel in a single test tube in yeast. Strains are tagged by DNA barcodes, allowing to efficiently track mutations in cell populations during
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mindset and originality are highly appreciated. We offer a 1 year position, which can be extended to 2 years or further. We will also expect to participate in obtaining external funding (e.g. by
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including fragmentomics, methylomics, etc). In addition, results will be compared and integrated with bulk and single-cell/spatial data obtained on matching tumor cells. About TOBI-lab The overarching goal
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innovative employers in the region. With more than 6000 employees from 100 different countries, we are helping to build tomorrow's world every day. Through top scientific research, we push back boundaries and